TWM589406U - LED drive circuit and control chip - Google Patents
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Abstract
本創作實施例提供一種LED(Light Emitting Diode,發光二極體)驅動電路和控制晶片,該驅動電路包括整流電路和恒流控制電路,恒流控制電路包括控制晶片,包括輸出電流設置腳、汲極腳、輸入電壓感測腳;分壓電路,連接在整流電路的輸出和基準地之間,其輸出端連接至輸入電壓感測腳;負載模組,連接在整流電路的輸出和汲極腳之間;輸出電容,其第一端連接至整流電路的輸出;第一延長輸出電容放電時間模組,連接在輸出電容的第二端與汲極腳之間;第二延長輸出電容放電時間模組,連接在輸出電容的第二端與輸出電流設置腳之間;其中,輸入電壓感測腳用於判斷進入前沿調光模式、後沿調光模式或非調光模式。根據上述技術方案,無需電感磁芯,實現電路小體積、系統器件少。 This creative embodiment provides an LED (Light Emitting Diode) driving circuit and a control chip. The driving circuit includes a rectifier circuit and a constant current control circuit. The constant current control circuit includes a control chip, including an output current setting pin, a sink Pole pin, input voltage sense pin; voltage divider circuit, connected between the output of the rectifier circuit and the reference ground, its output end is connected to the input voltage sense pin; load module, connected to the output and drain of the rectifier circuit Between the feet; the output capacitor whose first end is connected to the output of the rectifier circuit; the first extended output capacitor discharge time module, connected between the second end of the output capacitor and the drain pin; the second extended output capacitor discharge time The module is connected between the second end of the output capacitor and the output current setting pin; where the input voltage sensing pin is used to judge whether to enter the leading edge dimming mode, trailing edge dimming mode or non-dimming mode. According to the above technical solution, there is no need for an inductive magnetic core, and a small circuit volume and fewer system components are realized.
Description
本創作涉及LED(Light Emitting Diode,發光二極體)技術領域,更具體地說,涉及一種LED驅動電路和控制晶片。 This creation relates to the technical field of LED (Light Emitting Diode), and more specifically, to an LED driving circuit and a control chip.
發光二極體(Light Emitting Diode,LED)是一種能發光的半導體器件,其核心是PN接面,具有普通二極體的電學特性,發光二極體(Light Emitting Diode,LED)的光通量與流經LED的電流成正比,正是因為這個特性,LED的調光效果是其他傳統照明所無法比擬的,白熾燈等傳統照明燈具調光工作時會降低其工作效率,而LED進行調光時,由於電路中的電流減小,某些電阻成分的功耗會降低,進而提高發光效率。 Light Emitting Diode (LED) is a semiconductor device that can emit light. Its core is a PN junction. It has the electrical characteristics of ordinary diodes. The luminous flux and current of Light Emitting Diode (LED) The current through the LED is proportional to this feature. It is because of this characteristic that the dimming effect of the LED is unmatched by other traditional lighting. The dimming work of traditional lighting fixtures such as incandescent lamps will reduce its working efficiency, and when the LED is dimming, As the current in the circuit is reduced, the power consumption of certain resistance components will be reduced, thereby improving the luminous efficiency.
然而,傳統的LED可控矽調光方案通常採用電解電容和電感磁芯器件的開關方案,這會造成驅動電路體積過大,無法適應球泡、燈絲燈等小體積應用,另一方面由於電路器件多,造成系統成本過高,無法滿足用戶對低成本的要求。 However, the traditional LED thyristor dimming scheme usually uses the switching scheme of electrolytic capacitors and inductive magnetic core devices, which will cause the drive circuit to be too large to adapt to small-volume applications such as bulbs and filament lamps. , Causing the system cost to be too high to meet the user's low cost requirements.
為了解決前述技術問題中的一個或多個,本創作實施例提供一種LED驅動電路和控制晶片,可以實現一種無需電感磁芯器件的LED驅動電路,實現驅動電路小體積、系統器件少、成本低、滿足客戶實際應用需求。 In order to solve one or more of the aforementioned technical problems, this creative embodiment provides an LED driving circuit and a control chip, which can realize an LED driving circuit without an inductive magnetic core device, which realizes a small size of the driving circuit, fewer system components, and low cost , To meet the actual application needs of customers.
一方面,本創作實施例提供一種LED驅動電路,可以包括整流電路和恒流控制電路,整流電路可以用於輸出直流電,恒流控制電路可以包括控制晶片、分壓電路、負載模組、輸出電容、第一延長輸出電容放電時間模組、和第二延長輸出電容放電時間模組,其中,該控制晶片可以包括 輸出電流設置腳、汲極腳、輸入電壓感測腳,該分壓電路可以連接在整流電路的輸出和基準地之間,分壓電路的輸出端可以連接至輸入電壓感測腳,該負載模組可以連接在整流電路的輸出和汲極腳之間,該輸出電容的第一端可以連接至整流電路的輸出,該第一延長輸出電容放電時間模組可以連接在輸出電容的第二端與汲極腳之間,該第二延長輸出電容放電時間模組可以連接在輸出電容的第二端與輸出電流設置腳之間,並且其中,輸入電壓感測腳可以用於基於分壓電路的輸出,判斷進入前沿調光模式、後沿調光模式或非調光模式。 On the one hand, this creative embodiment provides an LED driving circuit, which may include a rectifier circuit and a constant current control circuit. The rectifier circuit may be used to output direct current, and the constant current control circuit may include a control chip, a voltage divider circuit, a load module, and an output A capacitor, a first extended output capacitor discharge time module, and a second extended output capacitor discharge time module, wherein the control chip may include The output current setting pin, the drain pin, and the input voltage sensing pin. The voltage divider circuit can be connected between the output of the rectifier circuit and the reference ground. The output end of the voltage divider circuit can be connected to the input voltage sensing pin. The load module can be connected between the output of the rectifier circuit and the drain pin, the first end of the output capacitor can be connected to the output of the rectifier circuit, and the first extended output capacitor discharge time module can be connected to the second of the output capacitor Between the terminal and the drain pin, the second extended output capacitor discharge time module can be connected between the second end of the output capacitor and the output current setting pin, and wherein the input voltage sensing pin can be used to The output of the road is judged to enter the leading edge dimming mode, trailing edge dimming mode or non-dimming mode.
根據本創作實施例提供的LED驅動電路,第一延長輸出電容放電時間模組可以包括一個或多個串聯連接的二極體。 According to the LED driving circuit provided by the present embodiment, the first extended output capacitor discharge time module may include one or more diodes connected in series.
根據本創作實施例提供的LED驅動電路,第二延長輸出電容放電時間模組可以包括一個或多個串聯連接的二極體。 According to the LED driving circuit provided by the present embodiment, the second extended output capacitor discharge time module may include one or more diodes connected in series.
根據本創作實施例提供的LED驅動電路,控制晶片還可以包括高壓維持電流輸入腳,並且值流控制電路還可以包括限流模組,限流模組可以連接在整流電路的輸出和高壓維持電流輸入腳之間。 According to the LED driving circuit provided in this creative embodiment, the control chip may further include a high voltage sustain current input pin, and the value current control circuit may further include a current limiting module, which may be connected to the output of the rectifier circuit and the high voltage sustain current Between input pins.
根據本創作實施例提供的LED驅動電路,恒流控制電路還可以包括輸出電容放電截止模組,並且負載模組可以經由輸出電容放電截止模組連接至整流電路的輸出。 According to the LED driving circuit provided by the present embodiment, the constant current control circuit may further include an output capacitor discharge cut-off module, and the load module may be connected to the output of the rectifier circuit via the output capacitor discharge cut-off module.
根據本創作實施例提供的LED驅動電路,恒流控制電路還可以包括假負載模組,假負載模組可以並聯連接在負載模組的兩端。 According to the LED driving circuit provided by the authoring embodiment, the constant current control circuit may further include a dummy load module, and the dummy load module may be connected in parallel at both ends of the load module.
根據本創作實施例提供的LED驅動電路,恒流控制電路還可以包括電流設置模組,電流設置模組可以連接在輸出電流設置腳和基準地之間。 According to the LED driving circuit provided by the present embodiment, the constant current control circuit may further include a current setting module, and the current setting module may be connected between the output current setting pin and the reference ground.
根據本創作實施例提供的LED驅動電路,控制晶片還可以包括工作因數設置腳,並且恒流控制電路還可以包括輸出電容放電工作因數設置模組,輸出電容放電工作因數設置模組可以連接在工作因數設置腳和基準地之間。 According to the LED driving circuit provided in this creative embodiment, the control chip may further include a working factor setting pin, and the constant current control circuit may further include an output capacitor discharging working factor setting module, and the output capacitor discharging working factor setting module may be connected to work The factor is set between the foot and the reference ground.
根據本創作實施例提供的LED驅動電路,控制晶片還可以包括閉環環路補償腳,並且恒流控制電路還可以包括環路補償模組,環路補償模組可以連接在閉環環路補償腳和基準地之間。 According to the LED driving circuit provided in this creative embodiment, the control chip may further include a closed loop compensation pin, and the constant current control circuit may further include a loop compensation module, and the loop compensation module may be connected to the closed loop compensation pin and Between the reference grounds.
根據本創作實施例提供的LED驅動電路,控制晶片還可以包括溫度折返點設置腳,並且溫度折返點設置腳的連接狀態為如下項中的一項:連接至基準地、懸空、或者通過一個或多個串聯連接的電阻連接至基準地。 According to the LED driving circuit provided in this creative embodiment, the control chip may further include a temperature reentry point setting pin, and the connection state of the temperature reentry point setting pin is one of the following items: connected to the reference ground, suspended, or through a or Multiple resistors connected in series are connected to the reference ground.
另一方面,本創作實施例提供了一種用在如前述第一方面的LED驅動電路中的控制晶片,控制晶片可以包括輸出電流取樣子模組、恒流調節子模組、控制電晶體、輸入電壓感測子模組、脈衝寬度調變子模組、和邏輯子模組。 On the other hand, the authoring embodiment provides a control chip used in the LED driving circuit as described in the first aspect, the control chip may include an output current sampling sub-module, a constant current adjustment sub-module, a control transistor, an input Voltage sensing sub-module, pulse width modulation sub-module, and logic sub-module.
其中,輸出電流取樣子模組的輸入端可以連接至輸出電流設置腳,恒流調節子模組的第一輸入端可以連接至輸出電流取樣子模組的第一輸出端,控制電晶體的閘極可以連接至恒流調節子模組的輸出端,控制電晶體的汲極可以連接至汲極腳,控制電晶體的源極可以連接至輸出電流設置腳,輸入電壓感測子模組的輸入端可以連接至輸入電壓感測腳,脈衝寬度調變子模組的輸入端可以連接至工作因數設置腳,脈衝寬度調變子模組的輸出端可以連接至恒流調節子模組的第二輸入端,邏輯子模組的第一輸入端可以連接至輸入電壓感測子模組的輸出端,邏輯子模組的第一輸出端可以連接至恒流調節子模組的第三輸入端。 The input terminal of the output current sampling submodule can be connected to the output current setting pin, and the first input terminal of the constant current adjustment submodule can be connected to the first output terminal of the output current sampling submodule to control the gate of the transistor The pole can be connected to the output of the constant current regulator submodule, the drain of the control transistor can be connected to the drain pin, the source of the control transistor can be connected to the output current setting pin, and the input voltage senses the input of the submodule The terminal can be connected to the input voltage sensing pin, the input terminal of the pulse width modulation submodule can be connected to the working factor setting pin, and the output terminal of the pulse width modulation submodule can be connected to the second of the constant current adjustment submodule At the input end, the first input end of the logic sub-module can be connected to the output end of the input voltage sensing sub-module, and the first output end of the logic sub-module can be connected to the third input end of the constant current adjustment sub-module.
根據本創作實施例提供的控制晶片,還可以包括溫度折返點設置腳和溫度選擇子模組,其中,溫度選擇子模組的輸入端可以連接至溫度折返點設置腳,溫度選擇子模組的輸出端可以連接至邏輯子模組的第二輸入端。 According to the control chip provided in this creative embodiment, it may further include a temperature reentry point setting pin and a temperature selection submodule, wherein the input terminal of the temperature selection submodule may be connected to the temperature reentry point setting pin, and the temperature selection submodule The output terminal can be connected to the second input terminal of the logic submodule.
根據本創作實施例提供的控制晶片,還可以包括高壓維持電流輸入腳和維持電流控制子模組,維持電流控制子模組的輸出端可以連接至高壓維持電流輸入腳,維持電流控制子模組的第一輸入端可以連接至輸 出電流取樣子模組的第二輸出端,維持電流控制子模組的第二輸入端可以連接至邏輯子模組的第二輸出端。 The control chip provided according to the present embodiment may further include a high-voltage sustain current input pin and a sustain current control sub-module. The output end of the sustain current control sub-module may be connected to the high-voltage sustain current input pin to maintain the current control sub-module The first input can be connected to the input The second output terminal of the current sampling sub-module and the second input terminal of the sustain current control sub-module can be connected to the second output terminal of the logic sub-module.
根據本創作實施例提供的控制晶片,還可以包括高壓供電輸入腳和低壓差線性穩壓子模組,其中,該低壓差線性穩壓子模組連接至高壓供電輸入腳,用於為控制晶片進行供電。 The control chip provided according to this creative embodiment may further include a high-voltage power supply input pin and a low-dropout linear voltage regulator sub-module, wherein the low-dropout linear voltage regulator sub-module is connected to the high-voltage power supply input pin for controlling the chip For power supply.
與現有技術相比,本創作實施例提供的LED驅動電路和控制晶片,可以實現一種無需電感磁芯器件的LED驅動電路,實現驅動電路小體積、系統器件少、成本低、滿足客戶實際應用需求等。 Compared with the prior art, the LED driving circuit and the control chip provided by the embodiment of the present invention can realize an LED driving circuit without an inductive magnetic core device, realizing a small driving circuit, few system components, low cost, and meeting the actual application requirements of customers Wait.
110‧‧‧整流電路 110‧‧‧Rectifier circuit
120‧‧‧恒流控制電路 120‧‧‧Constant current control circuit
1201、U1‧‧‧控制晶片 1201, U1‧‧‧control chip
1202‧‧‧分壓電路 1202‧‧‧Voltage dividing circuit
1203‧‧‧負載模組 1203‧‧‧load module
1204‧‧‧第一延長輸出電容放電時間模組 1204‧‧‧The first extended output capacitor discharge time module
1205‧‧‧第二延長輸出電容放電時間模組 1205‧‧‧Second extended output capacitor discharge time module
C1‧‧‧輸出電容 C1‧‧‧ Output capacitance
CC Regulator‧‧‧恒流調節子模組 CC Regulator‧‧‧Constant current regulator sub-module
CS‧‧‧輸出電流設置腳 CS‧‧‧Output current setting pin
CS Sense‧‧‧輸出電流取樣子模組 CS Sense‧‧‧Output current sampling submodule
COMP‧‧‧閉環環路補償腳 COMP‧‧‧Closed loop compensation pin
D1、D2、D3、D4‧‧‧整流二極體 D1, D2, D3, D4‧‧‧rectifier diode
D5、D6、D7‧‧‧二極體 D5, D6, D7 ‧‧‧ diode
Drain‧‧‧汲極腳 Drain
DUTY‧‧‧工作因數設置腳 DUTY‧‧‧Working factor setting pin
F1‧‧‧保險絲電阻 F1‧‧‧Fuse resistance
GND‧‧‧晶片基準地腳 GND‧‧‧chip reference ground
HV‧‧‧高壓供電輸入腳 HV‧‧‧High voltage power supply input pin
HVB‧‧‧高壓維持電流輸入腳 HVB‧‧‧High voltage sustain current input pin
Logic‧‧‧邏輯子模組 Logic‧‧‧Logic submodule
PWM‧‧‧脈衝寬度調變子模組 PWM‧‧‧Pulse Width Modulation Submodule
R1、R2、R3、R4、R5、R6、R7‧‧‧電阻 R1, R2, R3, R4, R5, R6, R7
TH‧‧‧三檔溫度折返點設置腳 TH‧‧‧three temperature setting point
VS‧‧‧輸入電壓感測腳 VS‧‧‧Input voltage sensing pin
VS Sense‧‧‧輸入電壓感測子模組 VS Sense‧‧‧Input voltage sensing submodule
為了更清楚地說明本創作實施例的技術方案,下面將對本創作實施例中所需要使用的圖式作簡單地介紹,顯而易見地,下面所描述的圖式僅僅是本創作的一些實施例,對於本領域普通技術人員來講,在不付出創造性勞動的前提下,還可以根據這些圖式獲得其他的圖式。 In order to more clearly explain the technical solution of the authoring embodiment, the following will briefly introduce the drawings required in the authoring embodiment. Obviously, the drawings described below are only some embodiments of the authoring. For those of ordinary skill in the art, without paying any creative labor, other drawings can also be obtained according to these drawings.
第1圖示出了本創作一實施例提供的LED驅動電路的結構示意圖; 第2圖示出了本創作另一實施例提供的LED驅動電路的結構示意圖; 第3圖示出了本創作一實施例提供的控制晶片的結構示意圖; 第4圖示出了本創作另一實施例提供的控制晶片的結構示意圖。 FIG. 1 shows a schematic structural diagram of an LED driving circuit provided by an embodiment of the present invention; FIG. 2 shows a schematic structural diagram of an LED driving circuit provided by another embodiment of the present invention; FIG. 3 shows a schematic structural diagram of a control chip provided by an embodiment of the present invention; FIG. 4 shows a schematic structural diagram of a control wafer provided by another embodiment of the present invention.
下面將詳細描述本創作的各個方面的特徵和示例性實施例。在下面的詳細描述中,提出了許多具體細節,以便提供對本創作的全面理解。但是,對於本領域技術人員來說很明顯的是,本創作可以在不需要這些具體細節中的一些細節的情況下實施。下面對實施例的描述僅僅是為了通過示出本創作的示例來提供對本創作的更好的理解。 The features and exemplary embodiments of various aspects of the present creation will be described in detail below. In the following detailed description, many specific details are proposed in order to provide a comprehensive understanding of this creation. However, it is obvious to those skilled in the art that this creation can be implemented without some of these specific details. The following description of the embodiments is merely to provide a better understanding of the creation by showing examples of the creation.
需要說明的是,在不衝突的情況下,本創作中的實施例及實施例中的特徵可以相互組合。下面將結合圖式對實施例進行詳細描述。 It should be noted that the embodiments in this creation and the features in the embodiments can be combined with each other without conflict. The embodiments will be described in detail below with reference to the drawings.
作為一個示例,參考第1圖,第1圖示出了本創作一實施例 提供的LED驅動電路的結構示意圖。 As an example, refer to FIG. 1, which shows an embodiment of the creation Schematic diagram of the structure of the provided LED driving circuit.
應該理解的是,由於LED是特性敏感的半導體器件,又具有負溫度特性,因此在應用過程中需要對其進行穩定工作狀態和保護,LED不像普通的白熾燈泡可以直接連接220V的交流市電。LED是低電壓恒流驅動,必須要設計符合要求的電路驅動其正常工作。 It should be understood that since LEDs are semiconductor devices with sensitive characteristics and negative temperature characteristics, they need to be stabilized and protected during application. Unlike ordinary incandescent bulbs, LEDs can be directly connected to 220V AC mains. The LED is driven by a low voltage constant current, and a circuit that meets the requirements must be designed to drive its normal operation.
在第1圖所示的實施例中,該LED驅動電路可以包括整流電路110和恒流控制電路120,其中,整流電路110可以用於輸出直流電,恒流控制電路120可以包括控制晶片1201、分壓電路1202、負載模組1203、輸出電容C1、第一延長輸出電容放電時間模組1204、和第二延長輸出電容放電時間模組1205。
In the embodiment shown in FIG. 1, the LED driving circuit may include a
其中,在一些實施例中,控制晶片1201可以包括輸出電流設置腳CS、汲極腳Drain、輸入電壓感測腳VS。其中,汲極腳又稱內部金屬氧化物半導體場效應電晶體(Metal-Oxide-Semiconductor Field-Effect Transistor,MOSFET)汲極,可以與LED燈的陰極連接至線性可控矽調光恒流電路。
In some embodiments, the
作為一個示例,參見第1圖,分壓電路1202可以連接在整流電路110的輸出和基準地之間,分壓電路1202的輸出端可以連接至輸入電壓感測腳VS,負載模組1203可以連接在整流電路110的輸出和汲極腳Drain之間,輸出電容C1的第一端可以連接至整流電路110的輸出,第一延長輸出電容放電時間模組1204可以連接在輸出電容C1的第二端與汲極腳Drain之間,第二延長輸出電容放電時間模組1205可以連接在輸出電容C1的第二端與輸出電流設置腳CS之間。
As an example, referring to FIG. 1, the
其中,整流電路110可以對輸入其中的交流電進行整流,得到直流電壓,該直流電壓可以通過分壓電路1202進行分壓,得到分壓信號值,可以將該分壓信號值輸入到輸入電壓感測腳VS,進而使得輸入電壓感測腳VS可以用於基於分壓電路的輸出,判斷進入前沿調光模式、後沿調光模式或非調光模式。
The
並且其中,針對可控矽調光而言,可控矽調光模式可以分為前沿調光模式和後沿調光模式。其中,可控矽前沿切相調光模式在進行切相時,在交流相位0開始,輸入電壓被斬波,直至可控矽導通時,才有電壓輸入,其中當前沿調光被觸發後,仍需要載入一段時間的電流,以維持其處於導通狀態,當這個電流斷開或減弱時,前沿調光模式即被關斷。並且可控矽後沿切相調光模式在進行切相時,從交流相位0開始時導通,經過一段時間後斷開,並將斷開狀態保持至半週期結束,經過零點後,重複相同操作,從而改變交流電流有效值。
And among them, for SCR dimming, SCR dimming mode can be divided into leading edge dimming mode and trailing edge dimming mode. Among them, when the SCR leading-edge phase-cut dimming mode starts phase-cutting, the input voltage is chopped at
在一些實施例中,整流電路110可以為橋式整流電路,整流電路用於將交流電能轉換為直流電能,例如整流電路110可以包括整流二極體D1、D2、D3、D4等。在其他實施例中,整流電路還可以為全波整流電路、半波整流電路等,本創作對此不做限制。
In some embodiments, the
在一些實施例中,分壓電路1202可以包括多個串聯連接的電阻,在串聯電路中,各個電阻上的電路相等,各電阻兩端的電壓之和等於電路總電壓,每個電阻上的電壓小於電路總電壓。在其他實施例中,分壓電路可以包括滑動變阻器等。本創作對比不做限制,分壓電路1202可以為任何可以實現分壓功能的電路。
In some embodiments, the
在一些實施例中,負載模組1203可以包括LED燈串。作為一個示例,LED燈串上的燈泡可以為並聯連接,作為另一示例,LED燈串上的燈泡可以為串聯連接。並且該燈泡可以為直插式或者貼片式的LED燈。
In some embodiments, the
在一些實施例中,負載模組1203可以包括LED燈串。作為一個示例,LED燈串上的燈泡可以為並聯連接,作為另一示例,LED燈串上的燈泡可以為串聯連接。並且該燈泡可以為直插式或者貼片式的LED燈。
In some embodiments, the
在一些實施例中,第二延長輸出電容放電時間模組1205可以包括一個或多個串聯連接的二極體。
In some embodiments, the second extended output capacitor
通過本創作實施例提供的上述技術方案,可以實現無需電感磁芯器件,驅動電路小體積,符合電磁干擾(Electromagnetic Interference, EMI)標準,並在一定程度上實現系統器件少、降低成本,滿足用戶實際應用需求等技術效果。 Through the above technical solution provided by the authoring embodiment, an inductive magnetic core device is not required, the driving circuit has a small size, and is in compliance with electromagnetic interference (Electromagnetic Interference, EMI) standards, and to a certain extent, achieve the technical effects of fewer system components, lower costs, and meet the actual application needs of users.
以下通過具體實例對本創作另一實施例提供的LED驅動電路進行詳細介紹,該實例僅是示例性的,而不旨在限制本創作,具體如下: The following describes the LED driving circuit provided by another embodiment of the present invention in detail through a specific example. The example is only exemplary and is not intended to limit the present invention, as follows:
作為一個示例,參考第2圖,第2圖示出了本創作另一實施例提供的LED驅動電路的結構示意圖。 As an example, referring to FIG. 2, FIG. 2 shows a schematic structural diagram of an LED driving circuit provided by another embodiment of the present creation.
具體地,如第2圖所示,LED驅動電路包括電性連接的整流電路110和恒流控制電路120。
Specifically, as shown in FIG. 2, the LED driving circuit includes an electrically connected
在該實施例中,整流電路110可以為橋式整流電路,整流電路用於將交流電能轉換為直流電能,整流電路110包括保險絲電阻F1,整流二極體D1、D2、D3、D4。
In this embodiment, the
具體地,整流電路110的輸入端與交流電連接,其第一輸入端連接至保險絲電阻F1的一端,保險絲電阻F1的另一端連接至整流二極體D1的正極,整流二極體D1的負極連接至整流二極體D2的負極,整流二極體D2的正極連接至整流二極體D4的負極和整流電路110的第二輸入端,整流二極體D4的正極連接至整流二極體D3的正極,整流二極體D3的負極連接至整流二極體D1的正極。
Specifically, the input terminal of the
此外,整流電路110的第一輸出端連接至整流二極體D1的負極和整流二極體D2的負極,整流電路110的第二輸出端連接至整流二極體D3的正極和整流二極體D4的正極和基準地。
In addition, the first output terminal of the
應該注意的是,在其他實施例中,整流電路110還可以為全波整流電路、半波整流電路等,本創作對此不做限制。
It should be noted that, in other embodiments, the
作為一個示例,恒流控制電路120可以包括控制晶片U1、分壓電路1202、負載模組1203、輸出電容C1、第一延長輸出電容放電時間模組1204、第二延長輸出電容放電時間模組1205、限流模組、輸出電容放電截止模組、假負載模組、電流設置模組、輸出電容放電工作因數設置模組、環路補償模組、和電阻R4。
As an example, the constant
在第2圖所示的實施例中,控制晶片U1包括除了包括如前所述的引腳之外,還可以包括:高壓供電輸入腳HV、高壓維持電流輸入腳HVB、三檔溫度折返點設置腳TH、工作因數設置腳DUTY、閉環環路補償腳COMP、晶片基準地腳GND等。 In the embodiment shown in FIG. 2, the control chip U1 includes, in addition to the pins as described above, it may also include: a high-voltage power supply input pin HV, a high-voltage sustaining current input pin HVB, and a third gear temperature reentry point setting Pin TH, working factor setting pin DUTY, closed loop compensation pin COMP, chip reference ground GND, etc.
在第2圖所示的實施例中,分壓電路1202可以包括電阻R1和R2。然而,應該注意,在其他實施例中,分壓電路1202可以包括串聯連接的N個分壓電阻,N為大於2的整數。在又一實施例中,可以採用滑動變阻器代替電阻R1和R2。本創作對此不做限制。
In the embodiment shown in FIG. 2, the
在第2圖所示的實施例中,負載模組可以包括LED燈串,諸如多個串聯連接的LED。 In the embodiment shown in FIG. 2, the load module may include LED light strings, such as a plurality of LEDs connected in series.
作為一個示例,第一延長輸出電容放電時間模組1204可以包括一個或多個串聯連接的二極體,該二極體用於延長輸出電容的放電時間。例如,在第2圖所示的實施例中,僅示例性地示出了一個二極體D6,用於延長輸出電容C1的放電時間。
As an example, the first extended output capacitor
作為一個示例,恒流控制電路120還可以包括第二延長輸出電容放電時間模組1205,第二延長輸出電容放電時間模組1205可以包括一個或多個串聯連接的二極體,該二極體可以用於延長輸出電容的放電時間。例如,在第2圖所示的實施例中,僅示例性地示出了一個二極體D7,用於延長輸出電容C1的放電時間。
As an example, the constant
作為一個示例,恒流控制電路120還可以包括限流模組,限流模組可以包括一個或多個串聯連接的電阻。例如,在第2圖所示的實施例中,僅示出了一個電阻R3,並不旨在限制本創作。
As an example, the constant
作為一個示例,恒流控制電路120還可以包括輸出電容放電截止模組,其可以包括一個或多個串聯連接的二極體。例如,在第2圖所示的實施例中,僅示出了一個二極體D5。在其他實施例中,可以不存在二極體D5。
As an example, the constant
作為一個示例,恒流控制電路120還可以包括假負載模組,
其可以包括一個或多個串聯連接的電阻。例如,在第2圖所示的實施例中,僅示出了一個電阻R7。本創作對此不做限制。
As an example, the constant
作為一個示例,恒流控制電路120還可以包括電流設置模組,其可以包括一個或多個串聯連接的電阻。例如,在第2圖所示的實施例中,僅示出了一個電阻R5。
As an example, the constant
作為一個示例,恒流控制電路120還可以包括輸出電容放電工作因數設置模組,其可以包括一個或多個串聯連接的電阻。例如,在第2圖所示的實施例中,僅示出了一個電阻R6。
As an example, the constant
作為一個示例,恒流控制電路120還可以包括環路補償模組,其可以包括一個或多個串聯連接的電容。例如,在第2圖所示的實施例中,僅示出了一個電容C2。
As an example, the constant
在一些實施例中,恒流控制電路120還可以包括位於引腳TH與分壓電路的第二輸入端之間的一個或多個串聯連接的電阻。例如,在第2圖所示的實施例中,僅示出了一個電阻R4。但是,在其他實施例中,可以不存在該電阻R4。
In some embodiments, the constant
在第2圖所示的實施例中,電阻R1的第一端(即,分壓電路的第一輸入端)連接至整流電路的第一輸出端,電阻R1的第二端(即,分壓電路的輸出端)連接至輸入電壓感測腳VS,電阻R2的第一端(即,分壓電路的第二輸入端)連接至整流電路的第二輸出端,電阻R2的第二端(即,分壓電路的輸出端)連接至電阻R1的第二端和輸入電壓感測腳VS。 In the embodiment shown in FIG. 2, the first end of the resistor R1 (ie, the first input of the voltage divider circuit) is connected to the first output of the rectifier circuit, and the second end of the resistor R1 (ie, the divided The output terminal of the voltage circuit) is connected to the input voltage sensing pin VS, the first terminal of the resistor R2 (ie, the second input terminal of the voltage divider circuit) is connected to the second output terminal of the rectifier circuit, and the second terminal of the resistor R2 The terminal (ie, the output terminal of the voltage divider circuit) is connected to the second terminal of the resistor R1 and the input voltage sensing pin VS.
作為一個示例,限流電阻R3的第一端可以連接至電阻R1的第一端,限流電阻R3的第二端可以連接至高壓維持電流輸入腳HVB。 As an example, the first terminal of the current limiting resistor R3 may be connected to the first terminal of the resistor R1, and the second terminal of the current limiting resistor R3 may be connected to the high-voltage sustaining current input pin HVB.
作為一個示例,二極體D5的正極可以連接至限流電阻R3的第一端,二極體D5的負極可以連接至高壓供電輸入腳HV。 As an example, the anode of the diode D5 may be connected to the first end of the current limiting resistor R3, and the cathode of the diode D5 may be connected to the high-voltage power supply input pin HV.
作為一個示例,LED燈串的正極可以連接至二極體D5的負極和高壓供電輸入腳HV,並且LED燈串的負極可以連接至汲極腳Drain。其中,二極體D5可用於防止輸出電容C1通過HVB放電。 As an example, the positive pole of the LED light string may be connected to the negative pole of the diode D5 and the high-voltage power supply input pin HV, and the negative pole of the LED light string may be connected to the drain pole Drain. Among them, the diode D5 can be used to prevent the output capacitor C1 from discharging through the HVB.
作為一個示例,假負載電阻R7可以並聯連接在LED燈串的兩端。即,假負載電阻R7的第一端可以連接至LED燈串的正極,假負載電阻R7的第二端可以連接至LED燈串的負極。 As an example, the dummy load resistor R7 may be connected in parallel across the LED string. That is, the first end of the dummy load resistor R7 may be connected to the positive pole of the LED light string, and the second end of the dummy load resistor R7 may be connected to the negative pole of the LED light string.
作為一個示例,輸出電容C1的第一端可以連接至假負載電阻R7的第一端,輸出電容的第二端可以連接至二極體D6的正極,二極體D6的負極可以連接至汲極腳Drain。其中,二極體D6可用於延長輸出電容C1的放電時間,電阻R7可用於防止提供放電通路。 As an example, the first end of the output capacitor C1 may be connected to the first end of the dummy load resistor R7, the second end of the output capacitor may be connected to the anode of the diode D6, and the cathode of the diode D6 may be connected to the drain Foot Drain. Among them, the diode D6 can be used to extend the discharge time of the output capacitor C1, and the resistor R7 can be used to prevent the discharge path from being provided.
此外,當處於充電模式時,LED燈串與輸出電容C1可以是並聯連接的。當處於放電模式時,輸出電容C1為LED進行放電。 In addition, when in the charging mode, the LED light string and the output capacitor C1 may be connected in parallel. When in discharge mode, the output capacitor C1 discharges the LED.
作為一個示例,輸出電容C1的第二端可以連接至二極體D7的負極,二極體D7的正極可以連接至輸出電流設置腳CS。其中,二極體D7可用於延長輸出電容C1的放電時間。 As an example, the second end of the output capacitor C1 may be connected to the negative electrode of the diode D7, and the positive electrode of the diode D7 may be connected to the output current setting pin CS. Among them, the diode D7 can be used to extend the discharge time of the output capacitor C1.
作為一個示例,電阻R5的第一端可以連接至輸出電流設置腳CS,電阻R5的第二端可以連接至電阻R2的第一端和整流電路的第二輸出端。其中,R5可用於設置輸出LED燈串的平均電流值。 As an example, the first terminal of the resistor R5 may be connected to the output current setting pin CS, and the second terminal of the resistor R5 may be connected to the first terminal of the resistor R2 and the second output terminal of the rectifier circuit. Among them, R5 can be used to set the average current value of the output LED string.
作為一個示例,電阻R6的第一端可以連接至工作因數設置腳DUTY,電阻R6的第二端可以連接至電阻R2的第一端和整流電路的第二輸出端。其中,電阻R6可用於設置輸出電容C1的放電工作因數。 As an example, the first terminal of the resistor R6 may be connected to the duty factor setting pin DUTY, and the second terminal of the resistor R6 may be connected to the first terminal of the resistor R2 and the second output terminal of the rectifier circuit. Among them, the resistor R6 can be used to set the discharge working factor of the output capacitor C1.
作為一個示例,電容C2的第一端可以連接至閉環環路補償腳COMP,電容C2的第二端可以連接至電阻R2的第一端、整流電路的第二輸出端、電阻R5的第二端和電阻R6的第二端。其中,電容C2可用於內部環路補償。 As an example, the first terminal of the capacitor C2 may be connected to the closed-loop compensation pin COMP, and the second terminal of the capacitor C2 may be connected to the first terminal of the resistor R2, the second output terminal of the rectifier circuit, and the second terminal of the resistor R5 And the second end of resistor R6. Among them, the capacitor C2 can be used for internal loop compensation.
作為一個示例,電阻R4的第一端可以連接至三檔溫度折返點設置腳TH,電阻R4的第二端可以連接至整流電路的第二輸出端。在其他實施例中,可以不設置電阻R4。 As an example, the first end of the resistor R4 may be connected to the third-grade temperature reentry point setting pin TH, and the second end of the resistor R4 may be connected to the second output end of the rectifier circuit. In other embodiments, the resistor R4 may not be provided.
參見第3圖,第3圖示出了本創作一實施例提供的控制晶片U1的結構示意圖。 Referring to FIG. 3, FIG. 3 shows a schematic structural diagram of a control chip U1 provided by an embodiment of the present invention.
作為一個示例,控制晶片U1可以包括輸出電流取樣子模組CS Sense、恒流調節子模組CC Regulator、控制電晶體、輸入電壓感測子模組VS Sense、脈衝寬度調變子模組(Pulse Width Modulation,PWM)、邏輯子模組Logic。 As an example, the control chip U1 may include an output current sampling submodule CS Sense, a constant current regulator submodule CC Regulator, a control transistor, an input voltage sensing submodule VS Sense, and a pulse width modulation submodule (Pulse Width Modulation (PWM), logic sub-module Logic.
作為一個示例,通過輸出電流取樣子模組可以對CS腳上的平均電壓進行取樣,將取樣得到的信號傳送至恒流調節子模組,使得恒流調節子模組產生控制信號,以控制功率管(即,控制電晶體)的閘極電壓值,從而調整輸出電流值,使得輸出電流平均值滿足設計值。 As an example, the average voltage on the CS pin can be sampled by the output current sampling sub-module, and the sampled signal can be transmitted to the constant current regulating sub-module, so that the constant current regulating sub-module generates a control signal to control the power The gate voltage of the transistor (ie, the control transistor) adjusts the output current value so that the average value of the output current meets the design value.
其中,輸出電流取樣子模組的輸入端可以連接至輸出電流設置腳CS,恒流調節子模組的第一輸入端可以連接至輸出電流取樣子模組的第一輸出端,控制電晶體的閘極可以連接至恒流調節子模組的輸出端,控制電晶體的汲極可以連接至汲極腳,控制電晶體的源極可以連接至輸出電流設置腳CS,輸入電壓感測子模組的輸入端可以連接至輸入電壓感測腳VS,PWM的輸入端可以連接至工作因數設置腳Duty,PWM的輸出端可以連接至恒流調節子模組的第二輸入端,邏輯子模組的第一輸入端可以連接至輸入電壓感測子模組的輸出端,邏輯子模組的第一輸出端可以連接至恒流調節子模組的第三輸入端。 The input terminal of the output current sampling submodule can be connected to the output current setting pin CS, and the first input terminal of the constant current adjustment submodule can be connected to the first output terminal of the output current sampling submodule to control the The gate can be connected to the output of the constant current regulator submodule, the drain of the control transistor can be connected to the drain pin, the source of the control transistor can be connected to the output current setting pin CS, and the input voltage sensing submodule Can be connected to the input voltage sensing pin VS, the PWM input can be connected to the duty factor setting pin Duty, the PWM output can be connected to the second input of the constant current regulation sub-module, the logic sub-module The first input terminal may be connected to the output terminal of the input voltage sensing submodule, and the first output terminal of the logic submodule may be connected to the third input terminal of the constant current regulation submodule.
其中,在一些實施例中,工作因數設置腳Duty,可以外接電阻(例如,電阻R6)到晶片基準地,用於輸出電容C1放電時的工作因數。 Wherein, in some embodiments, the duty factor setting pin Duty can be connected to a resistor (for example, resistor R6) to the chip reference ground for the duty factor when the output capacitor C1 is discharged.
其中,將整流後得到的直流電壓經過分壓電路(例如,由電阻R1和R2組成的分壓電路)進行分壓,得到分壓信號值,該分壓信號值通過VS腳傳輸至輸入電壓感測子模組,然後經過輸入電壓感測子模組的一系列處理之後,得到攜帶有VS資訊的數位信號,將該數位信號輸入至邏輯子模組中,進而用於判斷進入前沿調光模式、後沿調光模式、或非調光模式。 Among them, the rectified DC voltage is divided by a voltage dividing circuit (for example, a voltage dividing circuit composed of resistors R1 and R2) to obtain a voltage dividing signal value, and the voltage dividing signal value is transmitted to the input through the VS pin The voltage sensing sub-module, and then after a series of processing of the input voltage sensing sub-module, obtain a digital signal carrying VS information, and input the digital signal into the logic sub-module, which is then used to judge the entry into the leading edge Light mode, trailing edge dimming mode, or non-dimming mode.
並且其中,可以通過外部電阻(例如,R6)設定不同的放電頻率工作因數,將其通過工作因數設置腳Duty輸入至PWM控制模組中,可以產生不同工作因數的PWM信號。例如,當CS為低時,PWM信號通 過恒流調節子模組直接控制電晶體,並通過輸出電容C1為負載模組進行供電。 And among them, different discharge frequency working factors can be set through external resistors (for example, R6), which are input into the PWM control module through the working factor setting pin Duty, and PWM signals with different working factors can be generated. For example, when CS is low, the PWM signal The constant current regulating sub-module directly controls the transistor and supplies power to the load module through the output capacitor C1.
作為一個示例,通過輸出電流取樣子模組電路對CS腳上的平均電壓進行取樣,得到取樣信號,對取樣信號進行一系列處理之後傳遞給恒流調節子模組,以產生控制信號,利用該控制信號控制功率電晶體的閘極電壓值,從而調整輸出電流值,使得輸出電流平均值滿足設計值。 As an example, the average voltage on the CS pin is sampled by the output current sampling sub-module circuit to obtain a sampling signal, and the sampling signal is subjected to a series of processing and then passed to the constant current regulating sub-module to generate a control signal. The control signal controls the gate voltage value of the power transistor, thereby adjusting the output current value so that the average value of the output current meets the design value.
作為一個示例,整流電路接收交流電壓,經過轉換得到直流電壓,將直流電壓輸入分壓電路,例如通過電阻R1和R2對直流電壓進行分壓,得到分壓信號值,通過VS腳傳遞至輸入電壓感測子模組,經過輸入電壓感測子模組的處理,產生攜帶有VS資訊的數位信號,將該數位信號傳遞至邏輯子模組,可以用以判斷進入前沿調光模式、後沿調光模式或者非調光模式。 As an example, the rectifier circuit receives the AC voltage, obtains the DC voltage after conversion, and inputs the DC voltage into the voltage divider circuit, for example, divides the DC voltage through resistors R1 and R2 to obtain the voltage-divided signal value, which is transmitted to the input through the VS pin The voltage sensing sub-module, after being processed by the input voltage sensing sub-module, generates a digital signal carrying VS information, and transmits the digital signal to the logic sub-module, which can be used to judge whether to enter the leading edge dimming mode or the trailing edge Dimming mode or non-dimming mode.
應該注意的是,可以通過可控矽調光,調整電源的電流或電壓,以使作為負載的LED燈串產生不同強度的光輸出。 It should be noted that the thyristor dimming can be used to adjust the current or voltage of the power supply, so that the LED string as a load can produce light output of different intensities.
例如,LED調光方式有多種:線性調光、可控矽調光、脈衝寬度調變調光等。 For example, there are multiple LED dimming methods: linear dimming, thyristor dimming, pulse width dimming, etc.
具體地,針對可控矽調光而言,可控矽調光模式可以分為前沿調光模式和後沿調光模式。其中,可控矽前沿切相調光模式在進行切相時,在交流相位0開始,輸入電壓被斬波,直至可控矽導通時,才有電壓輸入,其中當前沿調光被觸發後,仍需要載入一段時間的電流,以維持其處於導通狀態,當這個電流斷開或減弱時,前沿調光模式即被關斷。並且可控矽後沿切相調光模式在進行切相時,從交流相位0開始時導通,經過一段時間後斷開,並將斷開狀態保持至半週期結束,經過零點後,重複相同操作,從而改變交流電流有效值。
Specifically, for thyristor dimming, the thyristor dimming mode can be divided into a leading edge dimming mode and a trailing edge dimming mode. Among them, when the SCR leading-edge phase-cut dimming mode starts phase-cutting, the input voltage is chopped at
以下通過具體實例對本實用新型實施例提供的控制晶片U1的具體結構進行詳細介紹,例如,參見第4圖,第4圖示出了本創作另一實施例提供的控制晶片U1的結構示意圖。 The specific structure of the control wafer U1 provided by the embodiment of the present invention will be described in detail below through specific examples. For example, refer to FIG. 4, which shows a schematic structural diagram of the control wafer U1 provided by another embodiment of the present invention.
在一些實施例中,除了如前述實施例中所述的控制晶片U1所包括的各個部分之外,控制晶片U1還可以包括溫度折返點設置腳TH和溫度選擇子模組。 In some embodiments, in addition to the various parts included in the control chip U1 as described in the foregoing embodiments, the control chip U1 may further include a temperature reentry point setting pin TH and a temperature selection submodule.
其中,溫度選擇子模組的輸入端可以連接至溫度折返點設置腳TH,溫度選擇子模組的輸出端可以連接至邏輯子模組的第二輸入端。 The input terminal of the temperature selection sub-module can be connected to the temperature foldback point setting pin TH, and the output terminal of the temperature selection sub-module can be connected to the second input terminal of the logic sub-module.
此外,應該注意的是,三擋溫度折返點設置腳TH可以懸空,可以接基準地,可以通過一個或多個串聯連接的電阻連接至基準地。並且其中,接地第一檔溫度折返點,懸空第二檔溫度折返點,接某一電阻值第三檔溫度折返點。 In addition, it should be noted that the third-threshold temperature turning point setting pin TH can be suspended, can be connected to the reference ground, and can be connected to the reference ground through one or more series-connected resistors. And among them, the grounding first-grade temperature turning point, the second-grade temperature turning point is suspended, and the third-grade temperature turning point of a certain resistance value is connected.
其中,從TH腳輸出電流,該電流在與TH腳連接的一個或多個電阻(例如,電阻R4)上產生不同的電壓,將該電壓輸入到溫度選擇子模組中,溫度選擇子模組對產生的電壓值進行判斷,產生三擋溫度折返點信號並將其輸入至邏輯子模組,以實現控制晶片U1所設定的三擋溫度折返點溫度。 Wherein, a current is output from the TH pin, and the current generates a different voltage on one or more resistors (eg, resistor R4) connected to the TH pin, and the voltage is input into the temperature selection sub-module, and the temperature selection sub-module Judging the generated voltage value, generating a third gear temperature turning point signal and inputting it to the logic sub-module, so as to realize the third gear temperature turning point temperature set by the control chip U1.
在一些實施例中,除了如前述實施例中所述的控制晶片U1所包括的各個部分之外,控制晶片U1還可以包括高壓維持電流輸入腳HVB和維持電流控制子模組。 In some embodiments, in addition to the various parts included in the control chip U1 as described in the foregoing embodiments, the control chip U1 may further include a high-voltage sustain current input pin HVB and a sustain current control sub-module.
其中,維持電流控制子模組的輸出端可以連接至高壓維持電流輸入腳,維持電流控制子模組的第一輸入端可以連接至輸出電流取樣子模組的第二輸出端,維持電流控制子模組的第二輸入端可以連接至邏輯子模組的第二輸出端。 The output terminal of the sustain current control sub-module can be connected to the high-voltage sustain current input pin, and the first input terminal of the sustain current control sub-module can be connected to the second output terminal of the output current sampling sub-module to maintain the current control sub The second input terminal of the module can be connected to the second output terminal of the logic submodule.
應該注意的是,高壓維持電流輸入腳HVB,可以用於提供調光器進行調光時需要的維持電流。其中,調光器為改變照明裝置中光源的光通量、調節照度水準的一種電氣裝置,其目的是為了調整燈光不同的亮度。 It should be noted that the high-voltage sustain current input pin HVB can be used to provide the sustain current required by the dimmer for dimming. Among them, the dimmer is an electrical device that changes the luminous flux of the light source in the lighting device and adjusts the illuminance level, and its purpose is to adjust the different brightness of the light.
並且,將整流後得到的高壓串接一個或多個串聯連接的電阻(例如,R3),通過高壓維持電流輸入腳HVB,進入維持電流控制子模組,產生前沿調光器、後沿調光器需要的不同的維持電流控制。 In addition, the rectified high voltage is connected in series with one or more series-connected resistors (for example, R3), through the high-voltage sustaining current input pin HVB, into the sustaining current control submodule, leading edge dimmer and trailing edge dimming are generated Different sustain current control required by the controller.
在一些實施例中,除了如前述實施例中所述的控制晶片U1所包括的各個部分之外,控制晶片U1還可以包括:高壓供電輸入腳HV和低壓差線性穩壓子模組(Low Dropout Regulator,LDO),其輸入端連接至高壓供電輸入腳HV,該低壓差線性穩壓子模組可以用於為控制晶片供電,例如為如下項中的至少一項進行供電:輸出電流取樣子模組、恒流調節子模組、輸入電壓感測子模組、脈衝寬度調變子模組、邏輯子模組、溫度選擇子模組、維持電流控制子模組。 In some embodiments, in addition to the various parts included in the control chip U1 as described in the foregoing embodiments, the control chip U1 may further include: a high-voltage power supply input pin HV and a low-dropout linear regulator submodule (Low Dropout Regulator, LDO), whose input terminal is connected to the high-voltage power supply input pin HV, the low-dropout linear regulator sub-module can be used to power the control chip, for example, to supply power to at least one of the following items: output current sampling sub-module Group, constant current adjustment submodule, input voltage sensing submodule, pulse width modulation submodule, logic submodule, temperature selection submodule, and maintenance current control submodule.
其中,高壓供電輸入腳HV,可以用於為控制晶片U1進行供電,例如為控制晶片中的一個或多個子模組進行供電,例如輸出電流取樣子模組、維持電流控制子模組、恒流調節子模組、輸入電壓感測子模組、邏輯子模組、和溫度選擇子模組等。 Among them, the high-voltage power supply input pin HV can be used to power the control chip U1, for example, power supply for one or more sub-modules in the control chip, such as output current sampling sub-module, maintenance current control sub-module, constant current Regulation submodule, input voltage sensing submodule, logic submodule, and temperature selection submodule.
並且,交流電進入整流電路得到直流電壓,並將整流後得到的高壓輸入控制晶片的HV腳,然後輸入LDO子模組並對其進行穩壓,從而為控制晶片U1內部的一個或多個子模組進行供電。 In addition, the alternating current enters the rectifier circuit to obtain a DC voltage, and the rectified high voltage is input to the HV pin of the control chip, and then input to the LDO sub-module and stabilizes it, so that it is one or more sub-modules inside the control chip U1 For power supply.
在一些實施例中,除了如前述實施例中所述的控制晶片U1所包括的各個部分之外,控制晶片U1還可以包括:閉環環路補償腳COMP,閉環環路補償腳連接至恒流調節子模組的第四輸入端。 In some embodiments, in addition to the various parts included in the control chip U1 as described in the foregoing embodiments, the control chip U1 may further include: a closed loop compensation pin COMP, which is connected to the constant current regulation The fourth input terminal of the submodule.
其中,閉環環路補償腳COMP可以用於補償恒流調節子模組環路,確保線性恒流(Line CC)和負載恒流(Load CC)處於閉環控制。 Among them, the closed loop compensation pin COMP can be used to compensate the loop of the constant current adjustment submodule to ensure that the linear constant current (Line CC) and the load constant current (Load CC) are in closed loop control.
本說明書的各個部分均採用遞進的方式進行描述,各個實施例之間相同相似的部分互相參見即可,每個實施例重點介紹的都是與其他實施例不同之處。 Each part of this specification is described in a progressive manner. The same or similar parts between the various embodiments can be referred to each other. Each embodiment focuses on the differences from other embodiments.
以上所述,僅為本創作的具體實施方式,但本創作的保護範圍並不局限於此,任何熟悉本技術領域的技術人員在本創作揭露的技術範圍內,可輕易想到各種等效的修改或替換,這些修改或替換都應涵蓋在本創作的保護範圍之內。因此,本創作的保護範圍應以申請專利範圍的保護範圍為準。 The above is only the specific implementation of this creation, but the scope of protection of this creation is not limited to this, any person skilled in the art can easily think of various equivalent modifications within the technical scope disclosed by this creation Or replacement, these modifications or replacements should be covered within the scope of protection of this creation. Therefore, the protection scope of this creation shall be subject to the protection scope of the patent application scope.
110‧‧‧整流電路 110‧‧‧Rectifier circuit
120‧‧‧恒流控制電路 120‧‧‧Constant current control circuit
1201‧‧‧控制晶片 1201‧‧‧Control chip
1202‧‧‧分壓電路 1202‧‧‧Voltage dividing circuit
1203‧‧‧負載模組 1203‧‧‧load module
1204‧‧‧第一延長輸出電容放電時間模組 1204‧‧‧The first extended output capacitor discharge time module
1205‧‧‧第二延長輸出電容放電時間模組 1205‧‧‧Second extended output capacitor discharge time module
C1‧‧‧輸出電容 C1‧‧‧ Output capacitance
CS‧‧‧輸出電流設置腳 CS‧‧‧Output current setting pin
Drain‧‧‧汲極腳 Drain
GND‧‧‧晶片基準地腳 GND‧‧‧chip reference ground
VS‧‧‧輸入電壓感測腳 VS‧‧‧Input voltage sensing pin
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